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用于复合材料粘结中基于局部焦耳热固化的导电纳米颗粒增强环氧胶粘剂

Electrically Conductive Nanoparticle-Enhanced Epoxy Adhesives for Localised Joule Heating-Based Curing in Composite Bonding.

作者信息

Dragasiute Karina, Monastyreckis Gediminas, Zeleniakiene Daiva

机构信息

Department of Mechanical Engineering, Kaunas University of Technology, Studentu str. 56, LT-51424 Kaunas, Lithuania.

出版信息

Polymers (Basel). 2025 Apr 25;17(9):1176. doi: 10.3390/polym17091176.

Abstract

This study investigates the application of carbon nanotube (CNT)-enhanced epoxy adhesives for localised Joule heating-based curing in composite bonding. The electrical, thermal, and mechanical properties of epoxy with 0.25-1 wt% CNT loadings were evaluated. A simple CNT alignment method using DC voltage showed improved electrical conductivity, greatly reducing the percolation threshold. Transient thermal analysis using finite element modelling of representative volume elements revealed that aligned CNTs led to increased localised temperatures near the CNT clusters. The model was validated with infrared thermal imaging analysis, which also showed similar non-linear heat distribution and more uniform heating under higher CNT loading. Additionally, power distribution mapping was evaluated through inverse modelling techniques, suggesting different conductivity zones and cluster distribution within the single-lap joint. The numerical and experimental results demonstrated that CNT alignment significantly enhanced localised conductivity, thereby improving curing efficiency at lower voltages. The lap shear test results showed a peak shear strength of 10.16 MPa at 0.5 wt% CNT loading, 9% higher than pure epoxy. Scanning electron microscopy analysis confirmed the formation of aligned CNT clusters, and how CNT loading affected the failure modes, transitioning from cohesive to void-rich fracture patterns at a higher wt%. These findings establish CNT-enhanced Joule heating as a viable and scalable alternative for efficient composite bonding in aerospace and structural applications.

摘要

本研究调查了碳纳米管(CNT)增强环氧胶粘剂在复合材料粘结中基于局部焦耳加热固化的应用。评估了碳纳米管负载量为0.25 - 1 wt%的环氧树脂的电学、热学和力学性能。一种使用直流电压的简单碳纳米管排列方法显示出导电性提高,大大降低了渗流阈值。使用代表性体积单元的有限元模型进行的瞬态热分析表明,排列的碳纳米管导致碳纳米管簇附近的局部温度升高。该模型通过红外热成像分析得到验证,红外热成像分析也显示了类似的非线性热分布,并且在较高的碳纳米管负载量下加热更均匀。此外,通过逆建模技术评估了功率分布映射,表明在单搭接接头内存在不同的导电区域和簇分布。数值和实验结果表明,碳纳米管排列显著提高了局部导电性,从而在较低电压下提高了固化效率。搭接剪切试验结果表明,在碳纳米管负载量为0.5 wt%时,峰值剪切强度为10.16 MPa,比纯环氧树脂高9%。扫描电子显微镜分析证实了排列的碳纳米管簇的形成,以及碳纳米管负载量如何影响失效模式,在较高的重量百分比下从内聚断裂模式转变为富含空隙的断裂模式。这些发现确立了碳纳米管增强焦耳加热作为航空航天和结构应用中高效复合材料粘结的一种可行且可扩展的替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdc4/12073144/dea3ddece571/polymers-17-01176-g001.jpg

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